Mollen Kevin P, Levy Ryan M, Prince Jose M, Hoffman Rosemary A, Scott Melanie J, Kaczorowski David J, Vallabhaneni Raghuveer, Vodovotz Yoram, Billiar Timothy R
Department of Surgery, McGowan Institute for Regenerative Medicine, University of Pittsburgh, 200 Lothrop Street, Pittsburgh, PA 15217, USA.
J Leukoc Biol. 2008 Jan;83(1):80-8. doi: 10.1189/jlb.0407201. Epub 2007 Oct 9.
Endogenous damage-associated molecular pattern (DAMP) molecules are released from cells during traumatic injury, allowing them to interact with pattern recognition receptors such as the toll-like receptors (TLRs) on other cells and subsequently, to stimulate inflammatory signaling. TLR4, in particular, plays a key role in systemic and remote organ responses to hemorrhagic shock (HS) and peripheral tissue injury in the form of bilateral femur fracture. TLR4 chimeric mice were generated to investigate the cell lineage in which functional TLR4 is needed to initiate the injury response to trauma. Chimeric mice were generated by adoptive bone marrow (BM) transfer, whereby donor marrow was given to an irradiated host using reciprocal combinations of TLR4 wild-type (WT; C3H/HeOuJ) and TLR4 mutant (Mu; C3H/HeJ) mice. After a period of engraftment, chimeric mice were then subjected to HS or bilateral femur fracture. Control groups, including TLR4-WT mice receiving WT BM and TLR4-Mu mice receiving Mu BM, responded to injury in a similar pattern to unaltered HeOuJ and HeJ mice, and protection was afforded to those mice lacking functional TLR4. In contrast, TLR4-WT mice receiving Mu BM and TLR4-Mu mice receiving WT BM demonstrated intermediate inflammatory and cellular damage profiles. These data demonstrate that functional TLR4 is required in BM-derived cells and parenchymal cells for an optimal inflammatory response to trauma.
内源性损伤相关分子模式(DAMP)分子在创伤性损伤期间从细胞中释放出来,使其能够与其他细胞上的模式识别受体(如Toll样受体(TLR))相互作用,随后刺激炎症信号传导。特别是TLR4,在全身和远程器官对失血性休克(HS)以及双侧股骨骨折形式的外周组织损伤的反应中起关键作用。生成TLR4嵌合小鼠以研究启动对创伤的损伤反应所需功能性TLR4的细胞谱系。通过过继性骨髓(BM)移植产生嵌合小鼠,即使用TLR4野生型(WT;C3H/HeOuJ)和TLR4突变型(Mu;C3H/HeJ)小鼠的相互组合,将供体骨髓给予受辐照的宿主。经过一段时间的植入后,然后对嵌合小鼠进行失血性休克或双侧股骨骨折。对照组,包括接受WT骨髓的TLR4-WT小鼠和接受Mu骨髓的TLR4-Mu小鼠,对损伤的反应模式与未改变的HeOuJ和HeJ小鼠相似,并且对那些缺乏功能性TLR4的小鼠具有保护作用。相比之下,接受Mu骨髓的TLR4-WT小鼠和接受WT骨髓的TLR4-Mu小鼠表现出中等程度的炎症和细胞损伤特征。这些数据表明,BM来源的细胞和实质细胞中需要功能性TLR4才能对创伤产生最佳炎症反应。